Proliferation and differentiation of neural stem cells (NSCs) have a crucial role to ensure neurogenesis and gliogenesis in the mammalian brain throughout life. As there is growing evidence for the significance of metabolism in regulating cell fate, knowledge on the metabolic programs in NSCs and how they evolve during differentiation into somatic cells may provide novel therapeutic approaches to address brain diseases. In this work, we applied a quantitative analysis to assess how the central carbon metabolism evolves upon differentiation of NSCs into astrocytes. Murine embryonic stem cell (mESC)-derived NSCs and astrocytes were incubated with labelled [1-(13)C]glucose and the label incorporation into intracellular metabolites was followed...
Thesis (Ph.D.)--University of Rochester. School of Medicine and Dentistry. Dept. of Neurobiology and...
White adipose tissues are functionally heterogeneous and differently manage the excess of energy sup...
Availability of homogeneous astrocyte populations would facilitate research concerning cell plastici...
Metabolic models have been used to elucidate important aspects of brain metabolism in recent years. ...
Astrocytes represent one of the main cell types in the brain and play a crucial role in brain functi...
Although oligodendrocytes constitute a significant proportion of cells in the central nervous system...
Since the initial description of astrocytes by neuroanatomists of the nineteenth century, a critical...
Specific metabolic features, such as glutamate reuptake, have been associated with normal functions ...
Specific metabolic features, such as glutamate reuptake, have been associated with normal functions ...
This is the author accepted manuscript. The final version is available from Wiley via http://dx.doi....
Specific metabolic features, such as glutamate reuptake, have been associated with normal functions ...
Metabolic reprogramming is thought to play a key role in sustaining the survival and proliferation o...
Metabolic reprogramming is thought to play a key role in sustaining the survival and proliferation o...
Astrocytes play critical roles in regulating neuronal synaptogenesis, maintaining blood–brain barrie...
Metabolic reprogramming is thought to play a key role in sustaining the survival and proliferation o...
Thesis (Ph.D.)--University of Rochester. School of Medicine and Dentistry. Dept. of Neurobiology and...
White adipose tissues are functionally heterogeneous and differently manage the excess of energy sup...
Availability of homogeneous astrocyte populations would facilitate research concerning cell plastici...
Metabolic models have been used to elucidate important aspects of brain metabolism in recent years. ...
Astrocytes represent one of the main cell types in the brain and play a crucial role in brain functi...
Although oligodendrocytes constitute a significant proportion of cells in the central nervous system...
Since the initial description of astrocytes by neuroanatomists of the nineteenth century, a critical...
Specific metabolic features, such as glutamate reuptake, have been associated with normal functions ...
Specific metabolic features, such as glutamate reuptake, have been associated with normal functions ...
This is the author accepted manuscript. The final version is available from Wiley via http://dx.doi....
Specific metabolic features, such as glutamate reuptake, have been associated with normal functions ...
Metabolic reprogramming is thought to play a key role in sustaining the survival and proliferation o...
Metabolic reprogramming is thought to play a key role in sustaining the survival and proliferation o...
Astrocytes play critical roles in regulating neuronal synaptogenesis, maintaining blood–brain barrie...
Metabolic reprogramming is thought to play a key role in sustaining the survival and proliferation o...
Thesis (Ph.D.)--University of Rochester. School of Medicine and Dentistry. Dept. of Neurobiology and...
White adipose tissues are functionally heterogeneous and differently manage the excess of energy sup...
Availability of homogeneous astrocyte populations would facilitate research concerning cell plastici...